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Updated: May 10, 2026

Proteomics to Identify Proteins Interacting with P2X2 Ligand-Gated Cation Channels
Published on: May 18, 2009
Dual gating mechanism and function of P2X7 receptor channels
Anmar Khadra1, Melanija Tomić, Zonghe Yan
1Department of Physiology, McGill University, Montreal, Quebec, Canada. anmar.khadra@mcgill.ca
Abstract:
The ATP-gated P2X7 receptor channel (P2X7R) operates as a cytolytic and apoptotic receptor but also controls sustained cellular responses, including cell growth and proliferation. However, it has not been clarified how the same receptor mediates such opposing effects. To address this question, we have combined electrophysiological, imaging, and mathematical studies using wild-type and mutant rat P2X7Rs. Activation of naïve (not previously stimulated) receptors by low agonist concentrations caused monophasic slow desensitizing currents and internalization of receptors without other changes in the cellular morphology, much like other P2XRs. In contrast, saturating agonist concentrations induced high-amplitude biphasic currents, reflecting pore dilation and causing rapid cell swelling and lysis. The existence of these two signaling patterns was accounted for using a revised Markov-state model that included, in addition to naïve and sensitized states, desensitized states. Occupancy of one or two ATP-binding sites of naïve receptors favored a slow transition to desensitized states, whereas occupancy of the third binding site favored a transition to sensitized/dilated states. Consistent with model predictions, nondilating P2X7R mutants always generated desensitizing currents. These results suggest that the level of saturation of the ligand binding sites determines the nature of the P2X7R gating and cellular actions.
Insights
The ATP-gated P2X7 receptor channel (P2X7R) can cause cell death or promote growth. Ligand binding site saturation dictates whether P2X7R causes cell lysis or sustained cellular responses.
Area of Science:
- Ion channel function
- Cellular signaling
- Molecular biology
Background:
- The ATP-gated P2X7 receptor channel (P2X7R) has dual roles in cell death and proliferation.
- Mechanisms underlying P2X7R's opposing cellular effects remain unclear.
Purpose of the Study:
- To elucidate how P2X7R mediates opposing cellular outcomes.
- To investigate the role of ligand binding site saturation in P2X7R gating.
Main Methods:
- Electrophysiology
- Cell imaging
- Mathematical modeling
- Wild-type and mutant rat P2X7R studies
Main Results:
- Low agonist concentrations induced slow desensitizing currents and receptor internalization.
- Saturating agonist concentrations caused rapid cell swelling and lysis via pore dilation.
- A revised Markov-state model explained distinct signaling patterns based on binding site occupancy.
- Nondilating mutants consistently produced desensitizing currents.
Conclusions:
- Ligand binding site saturation level determines P2X7R gating mode.
- P2X7R activation can lead to either cell death or sustained cellular responses based on saturation.
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